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Mitochondrial iron trafficking and the integration of iron metabolism between the mitochondrion and cytosol

机译:线粒体铁运输和线粒体与细胞质之间铁代谢的整合

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摘要

The mitochondrion is well known for its key role in energy transduction. However, it is less well appreciated that it is also a focal point of iron metabolism. Iron is needed not only for heme and iron sulfur cluster (ISC)-containing proteins involved in electron transport and oxidative phosphorylation, but also for a wide variety of cytoplasmic and nuclear functions, including DNA synthesis. The mitochondrial pathways involved in the generation of both heme and ISCs have been characterized to some extent. However, little is known concerning the regulation of iron uptake by the mitochondrion and how this is coordinated with iron metabolism in the cytosol and other organelles (e.g., lysosomes). In this article, we discuss the burgeoning field of mitochondrial iron metabolism and trafficking that has recently been stimulated by the discovery of proteins involved in mitochondrial iron storage (mitochondrial ferritin) and transport (mitoferrin-1 and -2). In addition, recent work examining mitochondrial diseases (e.g., Friedreich's ataxia) has established that communication exists between iron metabolism in the mitochondrion and the cytosol. This finding has revealed the ability of the mitochondrion to modulate whole-cell iron-processing to satisfy its own requirements for the crucial processes of heme and ISC synthesis. Knowledge of mitochondrial iron-processing pathways and the interaction between organelles and the cytosol could revolutionize the investigation of iron metabolism.
机译:线粒体在能量转换中起关键作用。然而,人们不太了解它也是铁代谢的焦点。铁不仅是参与血红素和铁硫簇(ISC)的蛋白质,这些蛋白质参与电子运输和氧化磷酸化,还需要多种细胞质和核功能,包括DNA合成。血红素和ISCs的产生涉及的线粒体途径已得到一定程度的表征。然而,关于线粒体对铁的吸收的调节以及其如何与细胞质和其他细胞器(例如,溶酶体)中铁代谢的协调机制知之甚少。在本文中,我们讨论了线粒体铁代谢和运输的蓬勃发展领域,该领域最近因发现与线粒体铁存储(线粒体铁蛋白)和运输(mitoferrin-1和-2)有关的蛋白质而受到刺激。另外,最近研究线粒体疾病(例如,弗里德里希共济失调)的工作已经证实,线粒体中铁代谢与细胞质之间存在着联系。这一发现揭示了线粒体调节全细胞铁加工的能力,以满足其自身对血红素和ISC合成关键过程的要求。线粒体铁加工途径的知识以及细胞器与细胞质之间的相互作用可以彻底改变铁代谢的研究。

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